We study the case of a pseudo-scalar dark matter candidate which emerges from a complex scalar singlet, charged under a global U(1) symmetry, which is broken both explicitly and spontaneously. The pseudo-scalar is naturally stabilized by the presence of a remnant discrete symmetry: dark CP. We study and compare the phenomenology of several simplified models with only one explicit symmetry breaking term. We find that several regions of the parameter space are able to reproduce the observed dark matter abundance while respecting direct detection and invisible Higgs decay limits: in the resonances of the two scalars, featuring the known as forbidden or secluded dark matter, and through non-resonant Higgs-mediated annihilations. In some cases, combining different measurements would allow one to distinguish the breaking pattern of the symmetry. Moreover, this setup admits a light DM candidate at the sub-GeV scale. We also discuss the situation where more than one symmetry breaking term is present. In that case, the dark CP symmetry may be spontaneously broken, thus spoiling the stability of the dark matter candidate. Requiring that this does not happen imposes a constraint on the allowed parameter space. Finally, we consider an effective field theory approach valid in the pseudo-Nambu-Goldstone boson limit and when the U(1) breaking scale is much larger than the electroweak scale.
Journal article
Dark matter from a complex scalar singlet: the role of dark CP and other discrete symmetries
The journal of high energy physics, v 2021(11), pp 1-34
01 Nov 2021
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- Title
- Dark matter from a complex scalar singlet: the role of dark CP and other discrete symmetries
- Creators
- Leonardo Coito - Universitat de ValènciaCarlos Faubel - Drexel University, Civil, Architectural, and Environmental EngineeringJuan Herrero-García - Universitat de ValènciaArcadi Santamaria - Universitat de València
- Publication Details
- The journal of high energy physics, v 2021(11), pp 1-34
- Publisher
- Springer Nature
- Number of pages
- 34
- Grant note
- FEDER/MCIyU-AEI: FPA2017-84543-P Generalitat Valenciana: PID2020-113334GB-I00, MCIN/AEI/10.13039/501100011033, PROMETEO/2019/087 "Generalitat Valenciana" through the GenT Excellence Program: PID2020-113334GB-I00, MCIN/AEI/10.13039/501100011033, CIDE-GENT/2020/020, PID2020-113644GB-I00 "Generalitat Valenciana" under the "GRISOLIA" and "ACIF" fellowship programs
The authors would like to thank David Cerdeno for showing interest regarding light dark matter which motivated us to further look into it. This work is partially supported by the grant FPA2017-84543-P funded by FEDER/MCIyU-AEI, grant PID2020-113334GB-I00 funded by MCIN/AEI/10.13039/501100011033 and grant PROMETEO/2019/087 funded by the "Generalitat Valenciana". JHG is supported by the "Generalitat Valenciana" through the GenT Excellence Program (CIDE-GENT/2020/020) and grants PID2020-113334GB-I00 and PID2020-113644GB-I00 funded by MCIN/AEI/10.13039/501100011033. LC and CF are also supported by the "Generalitat Valenciana" under the "GRISOLIA" and "ACIF" fellowship programs, respectively.
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- Civil, Architectural, and Environmental Engineering
- Web of Science ID
- WOS:000723081600002
- Other Identifier
- 991022199651204721